[0001] The present disclosure relates to a plug and a system of plugs enabling connection
of multiple electronic circuits.
Background
[0002] When decorating and furnishing shops, hotels etc. numerous electrical installations
are made including spots and other lighting devices. This requires connection of multiple
cables as well as the use of cables providing different power e.g. 12V, 230V and/or
400V rendering the installation slow and often troublesome. In some cases installations
are made above the sealing whereby work must often be performed in hard to reach areas
with reduced or no visibility of the work site.
[0003] EP 2 190 077 A1 discloses a connection device with phase selection, said device having a rotatable
phase-selection unit (2) allowing contacting of a phase conductor of a flat cable
with a phase selection tapping contact (3) only in predetermined rotational positions.
EP 2 190 077 A1 discloses three outgoing connections, of which one (the phase selection tapping contact
3) is connected to a phase (one of L1, L2, L3), another is connected to neutral (8),
and the last is connected to ground / protective earth (9).
[0004] Thus there is a need for plugs and plugs systems which can assist simple and fast
installation of multiple devices.
Summary
[0005] The present invention is defined in the claims.
[0006] In a first aspect of the present disclosure is provided a compact system which is
capable of providing more than one electric circuit.
[0007] In a second aspect of the present disclosure is provided a system which facilitates
correct alignment of plugs when connected.
[0008] In a third aspect of the present disclosure is provided a system which enables connection
of several different power circuits.
[0009] In a fourth aspect of the present disclosure is provided a plug which can form part
of plug system.
System
[0010] These and other advantages can be achieved by means of a system comprising a housing,
a plurality of connectors and a selector outlet, wherein
- the plurality of connectors allows for connection of two or more electrical circuits,
and
- the selector outlet has at least a part of the connectors in at least one selector
part, and said at least one selector part is movably arranged, whereby a configuration
of the connectors is changed when said at least one selector part is moved.
[0011] The housing may attain any suitable geometry, such as rectangular, triangular or
circular. In particularly, if the housing is rectangular parts of the housing may
have a triangular shape, such as the selector outlet may have a triangular shape,
whereby the advantages described below in relation to triangular shapes are obtained.
[0012] In particularly the part of the housing comprising the selector outlet may have a
triangular cross section defined by a first side A, a second side B and a third side
C and the number of connectors allows for connection of two or more electrical circuits
whereby a compact plug able to provide connection of several electric circuits is
provided.
[0013] The system according to the present disclosure may in one embodiment be a plug.
Selector outlet
[0014] The system comprises at least one selector outlet having at least a part of the connectors
in at least one selector part, wherein said at least one selector part is movably
arranged whereby the configuration of the connectors is changed when said at least
one selector part is moved. In particularly, the movement may be a rotation, wherein
the configuration of the connectors is changed when said at least one selector part
is rotated. I.e. a selector output makes it possible for a user to choose the configuration
of the connectors simply by moving, such as rotating the selector part.
[0015] The system comprises one or more selector outlets, each being as defined above.
[0016] If e.g. a small plug (as a truncated plug) with five pins (a dali pair, a 230V pair
and a ground) is mounted to a spot or other installation it is possible by means of
the selector output to choose which of a number of connectors in a distributor plug
will match the five pin connectors of the small plug.
[0017] Such a selector outlet can advantageously be arranged in e.g. a distributor plug
with numerous electric circuits as described above and herein as it allows a user
to choose which one or more of the many circuits inside the distributor plug will
be connected to a device attached to the selector outlet.
[0018] A selector output as here described can however be arranged in various plug types
not described herein where there is a need to change the configuration of all of or
a part of the connectors.
[0019] Often the connector parts can be circular parts which are arranged to be rotatable
between two, three, four or more different positions, wherein three different positions
are preferred.
[0020] If the connectors of the distributor plug are connected to the internal connections
by wires inside the plug preferably rotation above 360 deg is prevented by a lock
or stop.
[0021] Connector parts which are arranged to be moved in e.g. a sliding motion are also
imagined.
[0022] Thus, according to the present disclosure is provided a plug and a system of plugs
which enable coupling of numerous and different electrical circuits in a manner where
the plugs intuitively are correctly aligned by the user due to the shape of the plugs.
This means that the present plugs advantageously can be used where many and/or different
electrical installations and connections must be made. It also means the present plugs
can be handled in hard to reach places as well as in places with limited or no view
of the work site. This is achieved by the shape of the present plug together with
the way the connectors can be arranged in the plugs and assisted by the guiding parts,
sleeves, collars, and coding all in all limiting the possible errors when handling,
choosing and connecting the present plugs.
Triangular cross section
[0023] In the present system the connectors for the two or more electrical circuits can
be stacked in a compact formation where the nature of each connector or connector
set (e.g. dali+ and dali- or L1 and N1) may be easily recognizable. The triangular
cross section makes it possible to stack the connectors in a compact but yet simple
pattern.
[0024] A triangular plug according to the present disclosure with connectors for two or
more electric circuits also makes it possible that the plug is fed through a conduit,
holes etc. which would not be possible with e.g. a rectangular plug where the connectors
would have to be arranged side by side. This is due to the special triangular arrangement
providing the possibility for a highly compact plug.
[0025] In some embodiments the number of connectors is eleven whereby the triangular plugs
capability of containing numerous connectors in an easily overviewed arrangement is
used highly efficiently. In other embodiments depending on the intended use the number
of connectors can be more or less.
[0026] Preferably the lengths of the sides A, B, C are chosen to ensure that two plugs according
to the present disclosure can be oriented correctly with respect to each other even
when light or working conditions are not optimal. If for example the length of side
A = the length of side B and both A and B are different from the length of side C
(or if all three sides A,B,C are of a different length) a triangular plug according
to the present disclosure is achieved, where said plug can be oriented correctly with
respect to another plug without the need to fully see the plugs. This is due to the
fat that it is not possible to connect two such triangular plugs if they are not oriented
correctly with respect to each other. This is in contrast to e.g. circular or rectangular
plugs.
Connectors
[0027] In some embodiments the connectors belong to dali+- , L1+N, L2+N, L3+N (e.g. 230V),
and PE (ground) respectively, i.e. where 9 connectors are used. In this configuration
the connectors for four circuits are arranged with a common ground. Here the four
circuits are one 12v and three 230V.
[0028] In some embodiments the connectors belongs to dali1+- , dali2+- , L1+N, L2+N, L3+N,
and PE respectively, i.e. where 11 connectors are used. In this configuration the
connectors for 5 circuits are arranged with a common ground. Here the five circuits
are two 12v and three 230V.
[0029] In some large embodiments the connectors belongs to dali1+- , dali2+- ,dali3+- ,
L1+N, L2+N, L3+N, and PE respectively, i.e. where thirteen connectors are used. In
this configuration the connectors for six circuits are arranged with a common ground.
Here the six circuits are three 12v and three 230V.
[0030] In smaller embodiments the connectors belongs to dali1+- , dali2+- , L1+N, and PE
respectively, i.e. where seven connectors are used. In this configuration the connectors
for 5 circuits are arranged with a common ground. Here the three circuits are two
12v and one 230V.
[0031] In smaller embodiments the connectors belongs to dali1+-, L1+N, and PE respectively,
i.e. where five connectors are used. Here the three circuits are one 12v and one 230V.
[0032] The present plug can combine electrical circuits of 12V, 230V and 400V alone or in
combination.
Plugs
[0033] A plug enabling connection of several and even different types electric circuits
can be advantageous as it can minimize the number of parallel cables which may have
to be installed. For example a plug with nine connectors limits the need for four
different cables/installations to one. However, traditional e.g. rectangular or circular
plugs becomes bulgy, long and/or complicated making identification of each connector
hard.
[0034] A plug according to the present disclosure can be arranged so that the connectors
forms a male (with connectors in form of pins) or a female plug (with connectors in
form of holes) in order to achieve plugs which are connectable to each other.
[0035] In some embodiments the plug comprises a first end for receiving a cable and a second
end arranged with the male or female connectors.
[0036] In various embodiments the plug comprises a first end having a first set of connectors
(e.g. nine or eleven) and a second end arranged with a second set of connectors (e.g.
nine or eleven). I.e. the plug comprises a first end arranged with male or female
connectors and a second end arranged with male or female connectors.
[0037] In further embodiments one or more plugs according to the present disclosure are
connected to another plug with a cable thus forming an extension.
[0038] Also plugs according to the present disclosure can comprise at least one further
outlet thus forming a distributor plug. This further outlet is preferably also a triangular
plug with connectors arranged according to the present disclosure.
[0039] Thus the plugs according to the present disclosure can be used in many different
configurations providing a plug to different needs and situations.
[0040] If the plug comprises first and/or second lock parts for releasably locking two plugs
together it is possible to avoid that the plugs are separated by accident. The lock
formed by the first and second lock parts can be of different types. For example a
first plug can have a hole and a corresponding second plug for connecting to the first
plug can have a biased protrusion which can click into the hole of the first plug
to lock the two plugs together. The biased protrusion can be pressed by a user thereby
allowing the two plugs to be separated again. Plugs with first and/or second lock
means may advantageously be used for example in permanent installations or in installations
where there is a need for or a risk that one or more parts may be moved, pulled or
otherwise handled after installation i.e. where there is a risk that two plugs may
accidentally be separated.
[0041] In different embodiments the first side A is e.g. 1,5 - 4,5 cm depending on the intended
use of the plug. A short side length provides a small, compact plug. A longer side
length provides a larger plug where more connectors/electronic circuits can be arranged.
Side lengths shorter or longer than 1,5 - 4,5 cm can be chosen to provide even smaller
or larger plugs for example where very delicate connections must be made in little
space or where a large number of electrical circuits must be connected by one plug.
[0042] The depth, i.e. the distance between first and second end can be chosen to make space
for any internal connections to e.g. distributor plugs or to connections between wires
from a cable and the connectors of the plug. Thus the depth can span from less than
1cm to 20cm or more depending on the intended use and number and type of cables and/or
devices to be connected.
[0043] The corners and different sides of the plug can be sharp, rounded, truncated etc.
to provide plugs with no or few sharp edges.
[0044] Plugs according to the present disclosure can be provided as closed units i.e. where
the user cannot open or change the configuration of the internal parts and/or the
connectors. Alternative embodiments where the user can open the plugs can be provided
if it is advantageous to be able to change e.g. the configuration of the connectors.
[0045] The plug according to the present disclosure can be waterproof thus providing a plug
which can be used with enhanced safety in moist conditions. Waterproofing can be provided
by internal and/or external seals sealing openings in the plugs and/or preventing
that moisture enters between two connected plugs.
[0046] The present disclosure also relates to a system comprising triangular female plugs,
male plugs, distributor and/or extension plugs whereby a versatile system is achieved
allowing use of the plugs in numerous configurations and for a variety of large and
small installations.
[0047] A system may also comprise additional truncated plugs which fit into the triangular
shape and the dimensions of the male, female, distributors and/or extensions of the
system. Said truncated plugs comprising a subset of the connectors of the male, female,
distributor and/or extension plugs of the system. For example truncated plugs can
be used to engage in part of the output of a distributor plug. Truncated plugs can
be used to mount on e.g. lamps or devices which are to be connected to an electrical
installation comprising the present plugs but which lamp or device only require connection
to a subset of the connectors in a male, female, distributors and/or extensions of
the system. Truncated plugs may e.g. comprise from two connectors. In some embodiments
systems comprising truncated male/female/distributor/extension plugs can be imagined
e.g. where large systems of spots are to be mounted.
Rail
[0048] Preferably the system further comprises a rail which can hold one or more distributors
and/or extensions according to the present disclosure.
[0049] Said rail can advantageously have means for receiving one or more distributors and/or
extensions. These means can be arranged to fit with the different plugs, preferably
distributor plugs, by sliding, twisting, pressing etc. the plug to be fastened on
the means for receiving. Preferably the plug e.g. distributor and/or extensions are
releasable attached in the rail.
[0050] In some embodiments the extensions are dimensioned to connect two distributors received
in a rail. Several different types and lengths of extensions can be used but often
preferably standard connector lengths are used. The length of the extensions can be
adapted to correspond to the distance between two distributors arranged in a rail.
Type of electrical circuit
[0051] In some embodiments a plug is prepared for e.g. 7, 9, 10 or 11 connectors but only
a subset of these are in use.
[0052] The type of electrical circuits relating to the connectors can be indicated by colour
cording or other markings on the plug. It is also possible that codes are used to
indicate which connectors are connected inside the plug. For example it can be imagined
that a plug e.g. only has "active" dali+/- and L2, N2 which can be indicated on the
plug by e.g. a colour code.
[0053] The different type of plugs according to the present disclosure can be hollow with
internal connections (wires, cables, metal plates etc.) between connectors in the
first side and corresponding connectors in the second side or between connectors in
the first side and corresponding wires in a cable attached at second side or vice
versa.
[0054] In other embodiments the plug is solid or at least partly solid with internal connections
between connectors in the first side and corresponding connectors in the second side
or between connectors in the first side and corresponding wires in a cable attached
at second side or vice versa. The internal connections can advantageously be formed
by metal conductors cast into the plug during manufacturing of the plug. In such solid
or at least partly solid embodiments of different plugs according to the present disclosure,
the internal connections can be protected to avoid short circuits by an electrical
insulating material and/or the material from which the plug or part of the plug may
be cast can be electrically insulating itself.
[0055] During manufacturing the internal connections can be arranged and fixated relatively
to each other where after the plug is cast in one or more steps around the internal
connections.
[0056] It is also possible that the ends of the connectors are fixated where after the ends
and possibly other parts of the plug are cast. When the plug is cast around connectors
fixated at their ends, the internal connections are preferably made of insulated conductors.
The resulting plug, extension, distributor is preferably at least partly hollow.
[0057] A hollow plug, extension, distributor can be lighter and cheaper to produce as it
contains less material. A solid plug, extension, distributor can be more sturdy and/or
provide a fixed protection of the internal connections.
[0058] The pin connectors can be of various dimensions i.e. have a width and/or length adapted
to the use of the plug.
[0059] The size and shape of the connectors can thus be chosen based on the intended use.
The male connectors can e.g. be simple relatively thin pins, rounded pins with a larger
diameter, flat pins and/or pins with a semi-circular cross section. The corresponding
female connectors are arranged to match the shape of the male plugs and vice versa.
[0060] The female connectors can be holes adapted to receive the pin connectors. In several
embodiments the female connectors are arranged with contact elements which are biased
to press against the pin connectors to ensure a good electrical connection.
[0061] Plugs according to the present disclosure can be made of one or more materials for
example from the group of plastics, rubber, resins, with electrical connectors and
internal connections of various suitable conducting structures.
[0062] The present plugs can be arranged to comply with various international, regional
or national safety protocols and requirements.
[0063] A plug can have one or more selector outlets having a number of connectors wherein
at least a part of the connectors are arranged in one more selector parts, and wherein
- said one or more selector part is moveably arranged, and
- the configuration of the connectors are changed when one or more selector parts is
moved. I.e. a selector output makes it possible for a user to choose the configuration
of the connectors.
[0064] If e.g. a small plug (as a truncated plug) with five pins (a dali pair, a 230V pair
and a ground) is mounted to a spot or other installation it is possible by means of
the selector output to choose which of a number of connectors in a distributor plug
will match the five pin connectors of the small plug.
[0065] Such a selector outlet can advantageously be arranged in e.g. a distributor plug
with numerous electric circuits as described above and herein as it allows a user
to choose which one or more of the many circuits inside the distributor plug will
be connected to a device attached to the selector outlet.
[0066] A selector output as here described can however be arranged in various plug types
not described herein where there is a need to change the configuration of all of or
a part of the connectors.
[0067] Often the connector parts can be circular parts which are arranged to be rotatable
between two, three, four or more different positions, preferably it is rotatable between
three different positions.
[0068] In one embodiment the selector has a pairs of connectors for each position. It is
preferred each of the pair would be bipolar and have their own phase.
[0069] If the connectors of the distributor plug are connected to the internal connections
by wires inside the plug preferably rotation above 360 deg is prevented by a lock
or stop.
[0070] Connector parts which are arranged to be moved in e.g. a sliding motion are also
imagined.
[0071] Thus, according to the present disclosure is provided a plug and a system of plugs
which enable coupling of numerous and different electrical circuits in a manner where
the plugs intuitively are correctly aligned by the user due to the shape of the plugs.
This means that the present plugs advantageously can be used where many and/or different
electrical installations and connections must be made. It also means the present plugs
can be handled in hard to reach places as well as in places with limited or no view
of the work site. This is achieved by the shape of the present plug together with
the way the connectors can be arranged in the plugs and assisted by the guiding parts,
sleeves, collars, and coding all in all limiting the possible errors when handling,
choosing and connecting the present plugs.
Description of the drawings
[0072] The present disclosure will in the following be described in greater detail with
reference to the accompanying drawings. The drawings are exemplary and are not to
be construed as limiting to the invention.
Fig. 1 shows a triangular female plug according to the present disclosure
Fig. 2 shows a triangular male plug according to the present disclosure
Fig. 3 shows an extension according to the present disclosure
Fig. 4 shows a distributor according to the present disclosure
Fig. 5 shows a rail according to the present disclosure
Fig. 6 shows a rail with distributors and extensions according to the present disclosure
Fig. 7 shows a coded triangular plug according to the present disclosure
Fig. 8 shows a triangular plug according to the present disclosure with a sleeve
Fig. 9 and 10 show plugs according to the present disclosure with corresponding guiding
means
Fig. 11 and 12 show plugs according to the present disclosure with corresponding lock
means
Fig 13a, 13b, 13c show exemplary different embodiments of plugs according to the present
disclosure,
Fig. 14a and 14b show truncated plugs matching a triangular plug
Fig 15 shows a distributor plug with two selector outlets
Fig 16 shows a distributor plug with a single selector outlet
Fig 17 shows a selector output with two separate circular selector parts
Fig 18 shows a selector output with two concentric selector parts
Fig 19 shows two embodiments of plugs matching a selector outlet, and
Fig 20 and 21 shows two further embodiments of plugs matching a selector outlet.
Fig 22a and 22d show an assembled system of two triangular plugs
Fig 22b and 22c show two triangular plugs used to form an assembled system
Fig 23a shows a triangular housing for a plug
Fig 23b and 23c show a selector outlet for a plug
Detailed description
[0073] Fig. 1 shows a triangular plug 1 according to the present disclosure. The plug comprises
a housing 2 having three sides A, Band C and side surfaces 2a, 2b, 2c. In the present
embodiment the sides A and B have the same length and are longer than the side C.
[0074] The housing has a first end 5 wherein eleven connectors 3 are arranged. Opposing
the first end 5 is second end 6 wherein a cable 7 is attached. The cable 7 connects
to the connectors inside the housing. The first, second and third surface extend between
the first 5 and second end 6. In the present the example the plug is a she plug where
each of the connectors 3 are holes for receiving pins from a corresponding male plug.
[0075] The connectors are stacked in a pattern following the triangular shape of the first
end 5 i.e. follow the triangular cross section of the plug. Hereby is provided a quite
compact plug where the space of the first end is fully utilized to provide several
electric circuits arranged in a pattern which is simple and which makes it easy to
determine which connector belongs to which electric circuit.
[0076] In this shown embodiment the connectors are: a,b = L1,N; c,d=L2,N; e,g L3,N; f=ground;
h,i=dali1+,dali1-; j,k dali2+,dali2-.
[0077] Fig. 2 shows a male plug with pin connectors 8. This plug is shown without a connected
cable 7.
[0078] Fig 3 shows two plugs 1 connected by a cable 7 thus forming a connector 9. Depending
on the intended use the plugs can be female and/or male plugs as well as the length
of the cable can vary.
[0079] Fig. 4 shows a distributer plug 10. In this embodiment the distance between the first
5 and second end 6 are long enough to allow eleven connectors 3 to be arranged on
the first surface 2a forming an outlet 11 thereby allowing a device or a plug to be
attached not only at each of the first 5 and second end 6 but also at each of the
surfaces 2a and/or 2b (not shown).
[0080] Fig 5 shows a rail 12. The rail is formed as an elongated element with a simple U
shape formed by two side walls 12a and a bottom 12b. Along the middle of the bottom
attachment means 13a, b, c, d are distributed spaced apart by a distance d. 13a is
in the form of a partly circular protrusion. 13b is in form of a rectangular protrusion.
13c is in the form of a circular indentation and 13d is in the form of a protruding
hook shape for slideably receiving e.g. a distributor (not shown).
[0081] In fig 6 two distributors 10 have been attached to attachment means 13 in a rail
12. The distributors are attached by engaging the attachment means 13 with corresponding
means (not shown) in the distributors 10. The distributors are connected by connectors
9 thereby forming and array of connected distributors to which different installations
such as spots, speakers, ventilations etc can be connected.
[0082] The setup of fig 6 can for example advantageously be used where numerous devices
are to be installed across a loft or panel where each device requires electrical connection
and even requires different current which can be provided by the novel present plug.
[0083] Fig 7 shows a plug which is coded e.g. colour coded by mark 14. Coding of the plugs
can advantageously be used where not all connectors (a - f) are connected to e.g.
the cable 7 inside the housing of the plug.
[0084] Fig. 8 shows a plug where a circumferential collar 15 is arranged around the first
end 5. This collar 15 can e.g. be used to guide the engagement with another plug.
If the collar is made of a e.g. rubber or silicone the collar may help avoid moisture
entering the area between two plugs.
[0085] Fig 9 and 10 shows plugs with corresponding guiding parts here in the form of an
elongated protrusion 16 on one for sliding into groove 17 on another plug. In the
present embodiments the elongated protrusion 16 is on the female plug and the groove
17 is in the male plug however this can also be the other way around.
[0086] The guiding parts 16, 17 are used to assist the connection of the two plugs even
further than what is achieved by the triangular structure alone. I.e. it may help
that the two plugs are inserted in a way which may further prevent bending of the
connectors.
[0087] In fig 9 the plug has sides extending further than the first end 5 thus forming a
circumferential sleeve 18. This sleeve can have a function the same or similar to
the collar 15 of fig. 8. However the sleeve here is an integrated part of the plug
whereas the collar 15 can be a detachable part of the plug.
[0088] Fig 11 and 12 shows plugs with corresponding first 19 and second 20 lock means for
locking the two plugs releasably together to avoid accidental disconnection. The first
lock part is 19 a hole in the sleeve 18 which will be engaged by a knob 21 on the
second lock means 20 when the two plugs are connected. The second lock means has the
shape of a flap 22 which can be pressed inwards to allow engagement and disengagement
of the two lock parts.
[0089] The plug in fig 12 is a distributor plug with two outlets 11 on one side (the side
not shown can have similar or other outlets). In this embodiment the outputs 11 has
eleven and five female connectors. The connectors 8 in the first end 5 are eleven
male connectors 8.
[0090] Fig 13a, 13b, 13c show different embodiments of female plugs according to the present
disclosure. In fig 13a the third side C is significantly longer than sides A and B
and the connectors 3 are here flat and elongated holes for receiving corresponding
male pins in matching plugs. In fig 13b the sides A and B are significantly longer
than side C. In fig. 13c the sides A; B; C have the same length and the corners 23
are truncated.
[0091] Fig 14a and 14b show different types of truncated plugs matching other types of plugs
according to the present disclosure (indicated by dotted lines). A truncated plug
as 24a and 24b can clearly be arranged to fit in one position only of another plug
(dotted line). However, this can also be the case for 24c where the width of the plug
can be chosen to allow precise positioning.
[0092] Fig. 15 shows a distributor plug with two selector outlets 25a. The selector outlets
each comprise a first selector part 26 (having two pairs of dali connectors) and a
second selector part 27 having (three pairs of 230V connectors). In the present arrangement
the first and second selector part are discs which can be moved more specifically
rotated to change the configuration of the outlet 25a. A matching plug 24d has five
pin connectors 8 which in the present configuration of first and second selector part
of the left outlet in distributor plug will connect to Dali2 +- and to L1 ,N1, PE
. If the first selector part is rotated 90 deg counter clockwise the plug 24d will
engage Dali1+- and L1 ,N1, PE. Similarly if second selector part is rotated 50 deg
the plug 24d will engage Dali2+- and L2 ,N2, PE.
[0093] This way the selector outlets 25a allows the user to configure the connectors, by
turning the first and second selector part, to select which connectors 3 will engage
with the matching plug 24d. I.e. this way the special selector output enables a user
to choose which of the several circuits in the distributor plug will be connected
to a device attached to the plug 24d.
[0094] Fig 16 shows a distributor plug with an alternative selector outlet 25b wherein the
first 26 and second 27 selector part are arranged as two concentric circles.
[0095] Fig. 17 shows an alternative outlet with a first 26 and second 27 selector part arranged
to allow a user to select which five of the eleven connectors 3 will engage with matching
connectors 8 in male plug 24e.
[0096] As in figure 15 the first and second selector part are a small circular rotatable
part with two dali connector pairs and a larger circular rotatable part with three
230V/400V connector pairs and a common ground PE respectively.
[0097] In fig 17 the matching male plug is a rectangular narrow plug with a row of five
pin connectors 8. Dx+ and Dx- are for connecting to one of the two dali pairs of the
first selector part 26 and Lx, PE, Nx is for connecting to PE and one of the 230V/400V
connector pairs of the second selector part 27.
[0098] Depending on the position of the first selector part 26 Dx will be either D1 or D2
(i.e. dali 1 or dali 2) . Depending on the position of the second selector part 27
Lx,Nx will be either L1,N1 or L2,N2 or L3,N3.
[0099] Fig 18 shows another embodiment of a selector outlet wherein the first and second
selector part are arranged as two concentric rotatable parts. In this embodiment the
second selector part 27 has four pairs of 230V/400V connectors L1,N1 L2,N2 L3,N3 L4,N4.
A common ground PE is arranged in the centre. The first selector part 26 has two pairs
of dali connectors dali1+- and dali2+- . I.e. this sector outlet comprises thirteen
connectors.
[0100] The selector outlets of Fig. 17 and fig 18 can be arranged in triangular plugs as
described herein or in other types of plugs 28 with another geometry. Generally the
selector outlet can advantageously be used in plugs with several circuits wherein
only one or a subset of the total electrical circuits needs to be connected to a device
or other plug.
[0101] Fig 19 shows a triangular and a truncated triangular embodiment of plugs with five
pin connectors for engaging in a selector outlet as e.g. in fig 15 or fig 17.
[0102] Fig 20 shows a circular male plug 24h with five pins 8 connectors. Fig 21 shows a
circular male plug 24i with three pin connectors 8. Both plugs can engage with e.g.
selector outlets with concentric selector parts as in fig 16 and fig 18.
[0103] Fig 22a and 22d show an assembled system of two triangular plugs consisting of two
triangular plugs as shown in Fig 22b and 22c. Fig 22c shows a configuration wherein
the different connectors are female and rotationally arranged. The connectors are
rotatable between three different positions, such that the selector has three pairs
of connectors, i.e. a pair of L1+1, a pair of L2+1 and pair of L3+1. Fig 22b shows
a male plug, however the pins are not shown. The housing is an equilateral triangle
but it could be scalene.
[0104] Fig 23a shows a triangular housing for a plug, wherein a selector output with one
selector part as shown in cross section in Fig 23c and in perspective in 23b can be
inserted. The selector part is rotationally arranged and is shown with female connectors.
The housing is an equilateral triangle but it could be scalene.
[0105] The above figures each show different features of the present disclosure which features
can be combined in various ways. E.g. the sleeve 18 or collar 15 can form part of
male plugs, distributors and/or extensions. Similarly guides, locks, connectors of
different shape/size and truncated corners can form part of the various embodiments.
[0106] Thus according to the present disclosure is provided a plug which can be arranged
in numerous ways, male and/or female, as an extension and a distributor providing
a new type of plugs enabling the connection of a multitude of electric circuits by
one compact plug. The plugs can be arranged to connect different types and numbers
of electric circuits as well as they can be arranged to provide a very intuitive orientation
of the plugs ensuring correct and fast connection of two plugs.
1. An electrical connector system comprising:
- a distributor plug (10) comprising a housing (2) accommodating a first set of electrical
connectors (3) in a selector outlet (25a), said electrical connectors comprising:
i. a connector configured to connect to protective earth (PE);
ii. three connectors, each configured to connect to a neutral (N1, N2, or N3), and
iii. three connectors, each configured to connect to a phase (L1, L2 or L3) of the
three-phase power supply system; and
- at least one selector part (27) movably arranged in the selector outlet (25a) of
the distributor plug (10),
characterized in that
the selector part (27) allows for selecting a subset of the connectors of the distributor
plug, said subset comprising a specific pair of phase and neutral (e.g. L1 and N1),
wherein said selection may be performed by moving the selector part (27) in the selector
outlet (25a).
2. The electrical connector system (1) according to claim 1, wherein the selector part
(27) is rotationally arranged in the selector outlet (25a) of the distributor plug
(10), whereby the selected pair of phase and neutral is changed when the selector
part (27) is rotated.
3. The electrical connector system (1) according to any of the preceding claims, further
comprising an additional selector part (26) accommodating at least two connectors
configured for connecting to dali+ and dali- for controlling lighting, wherein the
additional selector part is movably arranged in a selector outlet (25a).
4. The electrical connector system (1) according to any of the preceding claims, wherein
the housing (2) is selected from the group consisting of a rectangular housing, a
triangular housing, and a circular housing.
5. The electrical connector system (1) according to any of the preceding claims, wherein
the selector outlet (25a) has a triangular cross section defined by a side A, a side
B and a side C, and wherein the length of side A equals the length of side B.
6. The electrical connector system (1) according to any of the preceding claims, wherein
the number of electrical connectors (3) are 9 or 11.
7. The electrical connector system (1) according to any of the preceding claims wherein
the electrical connectors (3) are dali+-, L1+N1, L2+N2, L3+N3, PE or dali1+-, dali2+-,
L1+N1, L2+N2, L3+N3, PE.
8. The electrical connector system (1) according to claim 7 wherein the PE is ground
and located in the centre of the selector part (27) and shared between the circuits.
9. The electrical connector system (1) according to any of the preceding claims, wherein
the distributor plug (10) comprises a second end arranged with electrical connectors
(3).
10. The electrical connector system (1) according to any of the preceding claims, wherein
the distributor plug (10) is connected to another distributor plug by a cable, thus
forming an extension.
11. The electrical connector system (1) according to any of the preceding claims comprising
a first and/or second lock parts (19).
12. The electrical connector system (1) according to any of the preceding claims, wherein
the system further comprises a second plug configured for connecting to the distributor
plug (10), said second plug comprising a second set of electrical connectors configured
for establishing an electrical connection with a subset of the first set of connectors
when said second plug is connected to the distributor plug (10).
13. The electrical connector system according to claim 12, wherein the subset of the first
set of connectors comprise the following connections: Lx, PE, and Nx, where x may
be any of 1, 2 or 3, such that Lx and Nx form a pair of phase and neutral, when the
second plug is connected to the distributor plug (10).
1. Elektrisches Verbindersystem, umfassend:
- einen Verteilerstecker (10), der ein Gehäuse (2) umfasst, das einen ersten Satz
elektrischer Verbinder (3) in einem Auswahlausgang (25a) aufnimmt, wobei die elektrischen
Verbinder umfassen:
i. einen Verbinder, der zum Verbinden mit Schutzerde (PE) konfiguriert ist;
ii. drei Verbinder, die jeweils zum Verbinden mit einem Neutralleiter (N1, N2 oder
N3) konfiguriert sind, und
iii. drei Verbinder, die jeweils zum Verbinden mit einer Phase (L1, L2 oder L3) des
dreiphasigen Stromversorgungssystems konfiguriert sind; und
- mindestens ein Auswahlteil (27), das im Auswahlausgang (25a) des Verteilersteckers
(10) beweglich angeordnet ist, dadurch gekennzeichnet, dass
das Auswahlteil (27) die Auswahl einer Teilmenge der Verbinder des Verteilersteckers
ermöglicht, wobei die Teilmenge ein spezifisches Paar aus Phase und Neutralleiter
(z. B. L1 und N1) umfasst, wobei die Auswahl durch Bewegen des Auswahlteils (27) im
Auswahlausgang (25a) durchgeführt werden kann.
2. Elektrisches Verbindersystem (1) nach Anspruch 1, wobei das Auswahlteil (27) drehbar
im Auswahlausgang (25a) des Verteilersteckers (10) angeordnet ist, wodurch das ausgewählte
Paar aus Phase und Neutralleiter geändert wird, wenn das Auswahlteil (27) wird gedreht.
3. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, ferner umfassend
ein zusätzliches Auswahlteil (26), das mindestens zwei Verbinder aufnimmt, die zur
Verbindung mit Dali+ und Dali- zum Steuern von Beleuchtung ausgelegt sind, wobei das
zusätzliche Auswahlteil beweglich in einem Auswahlausgang (25a) angeordnet ist.
4. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei das
Gehäuse (2) aus der Gruppe bestehend aus einem rechteckigen Gehäuse, einem dreieckigen
Gehäuse und einem kreisförmigen Gehäuse ausgewählt ist.
5. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei der
Auswahlausgang (25a) einen dreieckigen Querschnitt aufweist, der durch eine Seite
A, eine Seite B und eine Seite C definiert ist, und wobei die Länge der Seite A gleich
der Länge der Seite B ist.
6. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei die
Anzahl der elektrischen Verbinder (3) 9 oder 11 beträgt.
7. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei die
elektrischen Verbinder (3) Dali+-, L1+N1, L2+N2, L3+N3, PE oder Dali1+-, Dali2+-,
L1+N1, L2+N2, L3+N3, PE sind.
8. Elektrisches Verbindersystem (1) nach Anspruch 7, wobei die PE Masse ist und sich
in der Mitte des Auswahlteils (27) befindet und von den Schaltungen gemeinsam genutzt
wird.
9. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei der
Verteilerstecker (10) ein zweites Ende umfasst, das mit elektrischen Verbindern (3)
angeordnet ist.
10. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei der
Verteilerstecker (10) über ein Kabel mit einem anderen Verteilerstecker verbunden
ist, um dadurch eine Verlängerung zu bilden.
11. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, umfassend
ein erstes und/oder zweites Verriegelungsteil (19).
12. Elektrisches Verbindersystem (1) nach einem der vorhergehenden Ansprüche, wobei das
System ferner einen zweiten Stecker umfasst, der zum Verbinden mit dem Verteilerstecker
(10) konfiguriert ist, wobei der zweite Stecker einen zweiten Satz elektrischer Verbinder
umfasst, der zum Herstellen einer elektrischen Verbindung mit einer Teilmenge des
ersten Satzes von Verbindern konfiguriert ist, wenn der zweite Stecker mit dem Verteilerstecker
(10) verbunden ist.
13. Elektrisches Verbindersystem nach Anspruch 12, wobei die Teilmenge des ersten Satzes
von Verbindern die folgenden Verbindungen umfasst: Lx, PE und Nx, wobei x eines von
1, 2 oder 3 sein kann, sodass Lx und Nx ein Paar aus Phase und Neutralleiter bilden,
wenn der zweite Stecker mit dem Verteilerstecker (10) verbunden ist.
1. Système de connecteur électrique comprenant :
- une fiche de distributeur (10) comprenant un boîtier (2) logeant un premier ensemble
de connecteurs électriques (3) dans une sortie de sélecteur (25a), lesdits connecteurs
électriques comprenant :
i. un connecteur conçu pour se raccorder à la terre de protection (PE) ;
ii. trois connecteurs, chacun étant conçu pour se raccorder à un neutre (N1, N2 ou
N3), et
iii. trois connecteurs, chacun étant conçu pour se raccorder à une phase (L1, L2 ou
L3) du système d'alimentation électrique triphasé ; et
- au moins une partie de sélecteur (27) agencée de manière mobile dans la sortie de
sélecteur (25a) de la fiche de distributeur (10),
caractérisé en ce que
la partie de sélecteur (27) permet de sélectionner un sous-ensemble des connecteurs
de la fiche de distributeur, ledit sous-ensemble comprenant une paire spécifique de
phase et de neutre (par exemple L1 et N1), dans lequel ladite sélection peut être
effectuée en déplaçant la partie de sélecteur (27) dans la sortie de sélecteur (25a).
2. Système de connecteur électrique (1) selon la revendication 1, dans lequel la partie
de sélecteur (27) est agencée en rotation dans la sortie de sélecteur (25a) de la
fiche de distributeur (10), de sorte que la paire sélectionnée de phase et de neutre
soit modifiée lorsque la partie de sélecteur (27) est tournée.
3. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
comprenant en outre une partie de sélecteur supplémentaire (26) logeant au moins deux
connecteurs conçus pour se raccorder à dali+ et dali- pour contrôler l'éclairage,
dans lequel la partie de sélecteur supplémentaire est agencée de manière mobile dans
une sortie de sélecteur (25a).
4. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel le boîtier (2) est sélectionné dans le groupe consistant en un boîtier
rectangulaire, un boîtier triangulaire et un boîtier circulaire.
5. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel la sortie de sélecteur (25a) a une section transversale triangulaire définie
par un côté A, un côté B et un côté C, et dans lequel la longueur du côté A est égale
à la longueur du côté B.
6. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel le nombre de connecteurs électriques (3) est de 9 ou 11.
7. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel les connecteurs électriques (3) sont dali+-, L1+N1, L2+N2, L3+N3, PE ou
dali1+-, dali2+-, L1+N1, L2+N2, L3+N3, PE.
8. Système de connecteur électrique (1) selon la revendication 7, dans lequel la PE est
mise à la terre et située au centre de la partie de sélecteur (27) et partagée entre
les circuits.
9. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel la fiche de distributeur (10) comprend une seconde extrémité agencée avec
des connecteurs électriques (3).
10. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel la fiche de distributeur (10) est raccordée à une autre fiche de distributeur
par un câble, formant ainsi une extension.
11. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes
comprenant une première et/ou une seconde partie(s) de verrouillage (19).
12. Système de connecteur électrique (1) selon l'une quelconque des revendications précédentes,
dans lequel le système comprend en outre une seconde fiche conçue pour se raccorder
à la fiche de distributeur (10), ladite seconde fiche comprenant un second ensemble
de connecteurs électriques conçus pour établir un raccordement électrique avec un
sous-ensemble du premier ensemble de connecteurs lorsque ladite seconde fiche est
connectée à la fiche de distributeur (10).
13. Système de connecteur électrique selon la revendication 12, dans lequel le sous-ensemble
du premier ensemble de connecteurs comprend les raccordements suivants : Lx, PE et
Nx, où x peut être l'un quelconque de 1, 2 ou 3, de sorte que Lx et Nx forment une
paire de phase et de neutre, lorsque la seconde fiche est raccordée à la fiche de
distributeur (10).